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A 3D Hybrid of Chemically Coupled Nickel Sulfide and Hollow Carbon Spheres for High Performance Lithium-Sulfur Batteries

机译:用于高性能锂硫电池的化学耦合的硫化镍和空心碳球的3D混合体

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Lithiumsulfur batteries are a promising next-generation energy storage device owing to their high theoretical capacity and the low cost and abundance of sulfur. However, the low conductivity and loss of active sulfur material during operation greatly limit the rating capabilities and cycling stability of lithium-sulfur batteries. In this work, a unique sulfur host hybrid material comprising nanosized nickel sulfide (NiS) uniformly distributed on 3D carbon hollow spheres (C-HS) is fabricated using an in situ thermal reduction and sulfidation method. In the hybrid material, the nanosized NiS provides a high adsorption capability for polysulfides and the C-HS serves as a physical confinement for polysulfides and also a 3D electron transfer pathway. Moreover, NiS has strong chemical coupling with the C-HS, favoring fast charge transfer and redox kinetics of the sulfur electrode. With a sulfur loading of up to 2.3 mg cm(-2), the hybrid material-based lithium-sulfur batteries offer a capacity decay as low as 0.013% per cycle and a capacity of 695 mA h g(-1) at 0.5 C after 300 cycles. This unique 3D hybrid material with strong chemical coupling provides a promising sulfur host for high performance lithium-sulfur batteries.
机译:锂硫电池由于其理论容量高,硫磺的成本低且含量高而成为有希望的下一代储能设备。然而,低电导率和活性硫材料在操作过程中的损失极大地限制了锂硫电池的额定容量和循环稳定性。在这项工作中,使用原位热还原和硫化方法制造了一种独特的硫主体杂化材料,该材料包括均匀分布在3D碳空心球(C-HS)上的纳米级硫化镍(NiS)。在杂化材料中,纳米尺寸的NiS对多硫化物具有很高的吸附能力,而C-HS则是多硫化物的物理限制,同时也是3D电子转移途径。此外,NiS与C-HS具有很强的化学耦合性,有利于硫电极的快速电荷转移和氧化还原动力学。混合材料基锂硫电池的硫负载量高达2.3 mg cm(-2),在每次循环后0.5 C时,每循环的容量衰减低至0.013%,容量为695 mA hg(-1)。 300个循环。这种独特的3D混合材料具有强大的化学偶联作用,可为高性能锂硫电池提供有希望的硫主体。

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